Two isoforms of Pepck in Sarcophaga bullata and their distinct expression profiles through development, diapause, and in response to stresses of cold and starvation

Drew E. Spacht, Nicholas M. Teets, David L. Denlinger

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

Pepck is a metabolic enzyme that participates in gluconeogenesis through the conversion of oxaloacetate into phosphoenol pyruvate. Numerous transcriptomic studies have identified Pepck as a potential key player during diapause and various stresses responses. Here, we describe expression patterns of both cytosolic and mitochondrial isoforms of Pepck throughout development, during diapause, and in response to starvation and cold shock in the flesh fly, Sarcophaga bullata. We cloned full-length transcripts for both Pepck isoforms and observed that expression of both genes varied throughout development. Diapausing pupae have the highest relative expression of both isoforms, suggesting participation in the anticipatory production of sugars and sugar alcohols that occurs during this overwintering stage. In response to acute stress, the cytosolic isoform was upregulated whereas the mitochondrial variant remained unchanged. Cytosolic Pepck was strongly upregulated after 2 h recovery from cold shock and returned to baseline levels within 8 h. In response to 24 h of starvation, the cytosolic isoform was similarly upregulated and returned to control levels after 24 h of recovery. Acute stress is known to incur a metabolic cost, and Pepck could be a key player in this response. Although it remains unclear why there is such a dramatic divergence in the expression of the two isoforms, the distinction suggests specific roles for the two isoforms that depend on the developmental status of the fly and the stress conditions to which it is exposed.

Original languageEnglish
Pages (from-to)41-46
Number of pages6
JournalJournal of Insect Physiology
Volume111
DOIs
StatePublished - Nov 1 2018

Bibliographical note

Publisher Copyright:
© 2018 Elsevier Ltd

Funding

We thank Drs. Megan Meuti and Julie Reynolds for helpful comments on a draft of the manuscript. This project was supported in part by National Science Foundation Grant IOS-1354377 and US Department of Agriculture (USDA)-National Institute of Food and Agriculture (NIFA) Grant 2015-67013-23416. NMT is supported by the National Institute of Food and Agrilculture, U.S. Department of Agriculture , Hatch Project 1010996.

FundersFunder number
National Science Foundation Arctic Social Science ProgramIOS-1354377
U.S. Department of Agriculture1010996
US Department of Agriculture National Institute of Food and Agriculture, Agriculture and Food Research Initiative2015-67013-23416

    Keywords

    • Cold
    • Developmental patterns
    • Diapause
    • Pepck isoforms
    • Starvation

    ASJC Scopus subject areas

    • Physiology
    • Insect Science

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